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正常连续吞咽时的舌部动作。

Lingual action in normal sequential swallowing.

作者信息

Chi-Fishman G, Stone M, McCall G N

机构信息

Department of Electrical and Computer Engineering, Johns Hopkins University, Baltimore, MD, USA.

出版信息

J Speech Lang Hear Res. 1998 Aug;41(4):771-85. doi: 10.1044/jslhr.4104.771.

Abstract

Current knowledge about the flexibility in lingual motor control and performance during swallowing is incomplete. The present study aimed at gaining a better understanding of the tongue's motor flexibility and at identifying variable versus invariant lingual motor program parameters in light of changing swallowing task demands (discrete vs. sequential). Specifically, the timing and patterns of tongue-palate contact and the associated changes in tongue shape and action were examined in 5 normal adults using simultaneous electropalatography and ultrasound. Tasks for discrete swallowing included 5 and 30 cc of water; tasks for sequential swallowing involved drinking 200 cc of water at normal and fast rates. Results showed little variation in propulsive contact pattern as a function of task or subject. However, the tongue demonstrated shorter movement duration and overlapping gestures during sequential swallowing. Thus, continuous drinking was performed without changes in motor strategies per se but with changes in the timing coordination of the "drink" and "swallow" action sequences. These findings support the theory that the deglutitive lingual motor program has both invariant and variant parameters, and that movement pattern and action sequence reflect fixed elements within the structure of the motor program, but movement timing can be modified according to the demands of the task at hand.

摘要

目前关于吞咽过程中舌部运动控制和表现灵活性的知识并不完整。本研究旨在更好地理解舌头的运动灵活性,并根据吞咽任务需求的变化(离散式与连续式)确定可变与不变的舌部运动程序参数。具体而言,使用同步电子腭图和超声检查了5名正常成年人的舌-腭接触时间和模式以及相关的舌形和动作变化。离散吞咽任务包括5毫升和30毫升水;连续吞咽任务涉及以正常和快速速度饮用200毫升水。结果显示,推进性接触模式随任务或受试者的变化很小。然而,在连续吞咽过程中,舌头的运动持续时间较短且动作有重叠。因此,连续饮水时,运动策略本身没有改变,但“饮”和“咽”动作序列的时间协调发生了变化。这些发现支持了这样一种理论,即吞咽时的舌部运动程序既有不变的参数,也有可变的参数,并且运动模式和动作序列反映了运动程序结构中的固定元素,但运动时间可以根据手头任务的需求进行调整。

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